STRUCTURES OF THE CADMIUM, MERCURY, AND ZINC THIOLATE CLUSTERS IN METALLOTHIONEIN - XAFS STUDY OF ZN-7-MT, CD-7-MT, HG-7-MT, AND HG-18-MT FORMED FROM RABBIT LIVER METALLOTHIONEIN-2
Dt. Jiang et al., STRUCTURES OF THE CADMIUM, MERCURY, AND ZINC THIOLATE CLUSTERS IN METALLOTHIONEIN - XAFS STUDY OF ZN-7-MT, CD-7-MT, HG-7-MT, AND HG-18-MT FORMED FROM RABBIT LIVER METALLOTHIONEIN-2, Journal of the American Chemical Society, 116(24), 1994, pp. 11004-11013
The structural properties of zinc, cadmium, and mercury metallothionei
ns (MT) have been studied at 77 K using X-ray absorption fine structur
e spectroscopy (XAFS). The nearest neighbor bond lengths and coordinat
ion numbers for Zn(7)MT 2 and Cd-7-MT 2 are in close agreement with th
e previously reported values. Strikingly different structural paramete
rs have been obtained for the mercury-containing metallothioneins. For
Hg-7-MT 2 the nearest neighbor Hg-S bond length and coordination numb
er are determined to be 2.33 +/- 0.02 Angstrom and 2, respectively. A
new structure is proposed for Hg-7-MT 2 formed by addition of Hg2+ to
Zn-7-MT at pH 7 in which each Hg(Il) is coordinated by four thiolate s
ulfur but with two unusually short bonds and two unusually long bonds
which exhibit a much larger disorder than the shorter bonds. For the H
g-18-MT 2 species formed by adding Hg2+ to apo-MT 2 at pH 2, the local
structure is shown to involve nearest neighbor Hg-S bond lengths of 2
.42 +/- 0.026 Angstrom with 2-fold sulfur coordination plus an Hg-Cl s
hell at 2.57 +/- 0.03 Angstrom with an apparent coordination number 0.
61 and large disorder.